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    • 5. 发明授权
    • Non-destructive inspection device for inspecting limited-access features of a structure
    • 用于检查结构的有限访问特征的非破坏性检查装置
    • US07231826B2
    • 2007-06-19
    • US10752890
    • 2004-01-07
    • Richard H. BossiGary E. GeorgesonJames C. Kennedy
    • Richard H. BossiGary E. GeorgesonJames C. Kennedy
    • G01N29/24
    • G01N29/225G01N9/24G01N29/265G01N29/28G01N2291/02854G01N2291/106
    • There is provided a non-destructive inspection device having an actuating portion and at least one inspecting portion. The inspecting portion(s) are magnetically coupled to the actuating portion so that the inspecting portion(s) may be moved into limited-access areas to inspect features of a structure. The inspecting portion(s) each include at least one inspection sensor that transmits and/or receives signals that, when processed, indicate defects in the features of the structure. The actuating portion may include a handle for manual movement of the inspection device, or alternatively may include a motorized drive wheel for motorized positioning of the inspection device. A positional encoder device, such as an encoder wheel or optical encoder, may also be included in the actuating portion or inspecting portion(s) to monitor the location of the inspection device for more accurate or informative inspection results.
    • 提供了一种具有致动部分和至少一个检查部分的无损检查装置。 检查部分磁耦合到致动部分,使得检查部分可以移动到限制进入区域中以检查结构的特征。 检查部分每个包括至少一个检测传感器,其传送和/或接收在被处理时指示结构的特征中的缺陷的信号。 致动部分可以包括用于手动移动检查装置的手柄,或者可以包括用于检查装置的电动定位的电动驱动轮。 诸如编码器轮或光学编码器的位置编码器装置也可以被包括在致动部分或检查部分中,以监视检查装置的位置以获得更准确或详细的检查结果。
    • 10. 发明申请
    • ULTRASONIC PROBE
    • 超声探头
    • US20100064812A1
    • 2010-03-18
    • US12626859
    • 2009-11-27
    • Barry A. FetzerJames C. KennedyThomas E. RiechersFred D. Young
    • Barry A. FetzerJames C. KennedyThomas E. RiechersFred D. Young
    • G01N29/02
    • A61B8/14A61B8/4281G10K11/02
    • An ultrasonic probe includes a probe body having a contact surface and a cavity that is open at the contact surface, an ultrasonic transducer carried by the body, and a spacer within the cavity. The spacer has a first surface acoustically coupled to the transducer, and a second (coupling) surface within the cavity. The spacer propagates an acoustic signal between the transducer and the coupling surface. The coupling surface is spaced apart from the contact surface to form a recess within the body. The body further has at least one port for circulating a coupling fluid into the recess. Depth of the recess is selected to balance gravitational force on the coupling fluid versus surface tension of the coupling fluid so a bead of the fluid forms over an edge of a structure under inspection as the probe is moved over the edge.
    • 超声波探头包括具有接触表面和在接触表面处开口的空腔的探针体,由身体承载的超声换能器和腔内的间隔件。 间隔件具有声耦合到换能器的第一表面和腔内的第二(耦合)表面。 隔离器在换能器和耦合表面之间传播声信号。 联接表面与接触表面间隔开,以在主体内形成凹陷。 主体还具有用于使耦合流体循环到凹部中的至少一个端口。 选择凹槽的深度以平衡耦合流体上的重力与耦合流体的表面张力,因此当探针在边缘上移动时,流体的边缘形成在被检查结构的边缘上。